Ser-Phosphorylation of PCSK9 (Proprotein Convertase Subtilisin-Kexin 9) by Fam20C (Family With Sequence Similarity 20, Member C) Kinase Enhances Its Ability to Degrade the LDLR (Low-Density Lipoprotein Receptor).

Ali Ben Djoudi Ouadda, M. Gauthier, Delia Susan-Resiga, E. Girard, R. Essalmani, M. Black, J. Marcinkiewicz, D. Forget, J. Hamelin, A. Evagelidis, Kévin Ly, R. Day, L. Galarneau, F. Corbin, B. Coulombe, A. Çaku, V. Tagliabracci, N. Seidah
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引用次数: 28

Abstract

OBJECTIVE PCSK9 (proprotein convertase subtilisin-kexin 9) enhances the degradation of the LDLR (low-density lipoprotein receptor) in endosomes/lysosomes. This study aimed to determine the sites of PCSK9 phosphorylation at Ser-residues and the consequences of such posttranslational modification on the secretion and activity of PCSK9 on the LDLR. Approach and Results: Fam20C (family with sequence similarity 20, member C) phosphorylates serines in secretory proteins containing the motif S-X-E/phospho-Ser, including the cholesterol-regulating PCSK9. In situ hybridization of Fam20C mRNA during development and in adult mice revealed a wide tissue distribution, including liver, but not small intestine. Here, we show that Fam20C phosphorylates PCSK9 at Serines 47, 666, 668, and 688. In hepatocytes, phosphorylation enhances PCSK9 secretion and maximizes its induced degradation of the LDLR via the extracellular and intracellular pathways. Replacing any of the 4 Ser by the phosphomimetic Glu or Asp enhanced PCSK9 activity only when the other sites are phosphorylated, whereas Ala substitutions reduced it, as evidenced by Western blotting, Elisa, and LDLR-immunolabeling. This newly uncovered PCSK9/LDLR regulation mechanism refines our understanding of the implication of global PCSK9 phosphorylation in the modulation of LDL-cholesterol and rationalizes the consequence of natural mutations, for example, S668R and E670G. Finally, the relationship of Ser-phosphorylation to the implication of PCSK9 in regulating LDL-cholesterol in the neurological Fragile X-syndrome disorder was investigated. CONCLUSIONS Ser-phosphorylation of PCSK9 maximizes both its secretion and activity on the LDLR. Mass spectrometric approaches to measure such modifications were developed and applied to quantify the levels of bioactive PCSK9 in human plasma under normal and pathological conditions.
Fam20C (Family With Sequence Similarity 20, Member C)激酶ser -磷酸化PCSK9 (Proprotein converting ase Subtilisin-Kexin 9)增强其降解低密度脂蛋白受体(LDLR)的能力
目的:蛋白转化酶枯草杆菌素-酮素9 (pcsk9)促进内体/溶酶体低密度脂蛋白受体(LDLR)的降解。本研究旨在确定PCSK9在ser -残基上的磷酸化位点,以及这种翻译后修饰对PCSK9在LDLR上的分泌和活性的影响。方法和结果:Fam20C(家族序列相似性为20,成员C)磷酸化含有S-X-E/phospho-Ser基元的分泌蛋白中的丝氨酸,包括胆固醇调节蛋白PCSK9。在发育期间和成年小鼠中,Fam20C mRNA的原位杂交显示其广泛的组织分布,包括肝脏,但不包括小肠。在这里,我们发现Fam20C磷酸化PCSK9的47、666、668和688丝氨酸。在肝细胞中,磷酸化可增强PCSK9的分泌,并通过细胞外和细胞内途径使其诱导的LDLR降解最大化。Western blotting、Elisa和ldlr免疫标记证明,用拟磷Glu或Asp替代任何一个4 Ser位点,只有在其他位点磷酸化时才会增强PCSK9的活性,而取代Ala则会降低其活性。这一新发现的PCSK9/LDLR调控机制完善了我们对PCSK9全局磷酸化在ldl -胆固醇调节中的含义的理解,并使自然突变(如S668R和E670G)的后果合理化。最后,研究了ser -磷酸化与PCSK9在神经脆性x综合征中调节ldl -胆固醇的关系。结论ser -磷酸化可使PCSK9在LDLR上的分泌和活性最大化。研究人员开发了测量这种修饰的质谱方法,并将其用于在正常和病理条件下量化人血浆中生物活性PCSK9的水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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